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Dive into the research topics where Frédéric Bruyneel is active.

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Featured researches published by Frédéric Bruyneel.


PLOS ONE | 2011

Segregation of Fluorescent Membrane Lipids into Distinct Micrometric Domains: Evidence for Phase Compartmentation of Natural Lipids?

Ludovic D′auria; Patrick Van Der Smissen; Frédéric Bruyneel; Pierre J. Courtoy; Donatienne Tyteca

Background We recently reported that sphingomyelin (SM) analogs substituted on the alkyl chain by various fluorophores (e.g. BODIPY) readily inserted at trace levels into the plasma membrane of living erythrocytes or CHO cells and spontaneously concentrated into micrometric domains. Despite sharing the same fluorescent ceramide backbone, BODIPY-SM domains segregated from similar domains labelled by BODIPY-D-e-lactosylceramide (D-e-LacCer) and depended on endogenous SM. Methodology/Principal Findings We show here that BODIPY-SM further differed from BODIPY-D-e-LacCer or -glucosylceramide (GlcCer) domains in temperature dependence, propensity to excimer formation, association with a glycosylphosphatidylinositol (GPI)-anchored fluorescent protein reporter, and lateral diffusion by FRAP, thus demonstrating different lipid phases and boundaries. Whereas BODIPY-D-e-LacCer behaved like BODIPY-GlcCer, its artificial stereoisomer, BODIPY-L-t-LacCer, behaved like BODIPY- and NBD-phosphatidylcholine (PC). Surprisingly, these two PC analogs also formed micrometric patches yet preferably at low temperature, did not show excimer, never associated with the GPI reporter and showed major restriction to lateral diffusion when photobleached in large fields. This functional comparison supported a three-phase micrometric compartmentation, of decreasing order: BODIPY-GSLs > -SM > -PC (or artificial L-t-LacCer). Co-existence of three segregated compartments was further supported by double labelling experiments and was confirmed by additive occupancy, up to ∼70% cell surface coverage. Specific alterations of BODIPY-analogs domains by manipulation of corresponding endogenous sphingolipids suggested that distinct fluorescent lipid partition might reflect differential intrinsic propensity of endogenous membrane lipids to form large assemblies. Conclusions/Significance We conclude that fluorescent membrane lipids spontaneously concentrate into distinct micrometric assemblies. We hypothesize that these might reflect preexisting compartmentation of endogenous PM lipids into non-overlapping domains of differential order: GSLs > SM > PC, resulting into differential self-adhesion of the two former, with exclusion of the latter.


Biochimica et Biophysica Acta | 2011

Structure–activity relationships of various amino-hydroxy-benzenesulfonic acids and sulfonamides as tyrosinase substrates

Antonio Rescigno; Frédéric Bruyneel; Alessandra Padiglia; Francesca Sollai; Andrea Salis; Jacqueline Marchand-Brynaert; Enrico Sanjust

BACKGROUND o-Aminophenols have been long recognised as tyrosinase substrates. However their exact mode of interaction with the enzymes active site is unclear. Properly vic-substituted o-aminophenols could help gain some insight into tyrosinase catalytic mechanism. METHODS Eight vic-substituted o-aminophenols belonging to two isomeric series were systematically evaluated as tyrosinase substrates and/or activators and/or inhibitors, by means of spectrophotometric techniques and HPLC-MS analysis. Some relevant kinetic parameters have also been obtained. RESULTS Four o-aminophenolic compounds derived from 3-hydroxyorthanilic acid (2-amino-3-hydroxybenzenesulfonic acid) and their four counterparts derived from the isomeric 2-hydroxymetanilic acid (3-amino-2-hydroxybenzenesulfonic acid) were synthesised and tested as putative substrates for mushroom tyrosinase. While the hydroxyorthanilic derivatives were quite inactive as both substrates and inhibitors, the hydroxymetanilic compounds on the contrary all acted as substrates for the enzyme, which oxidised them to the corresponding phenoxazinone derivatives. GENERAL SIGNIFICANCE Based on the available structures of the active sites of tyrosinases, the different affinities of the four metanilic derivatives for the enzyme, and their oxidation rates, we propose a new hypothesis regarding the interaction between o-aminophenols and the active site of tyrosinase that is in agreement with the obtained experimental results.


ChemBioChem | 2010

Live-cell imaging with water-soluble aminophenoxazinone dyes synthesised through laccase biocatalysis

Frédéric Bruyneel; Ludovic D'Auria; Olivier Payen; Pierre J. Courtoy; Jacqueline Marchand-Brynaert

Aminophenoxazinone dyes with variable water solubilities were assayed for the first time in a live‐cell imaging application. Among a library of ten sulfonylated chromophores, one compound gave excellent results as an endocytic marker, showing a precise subcellular distribution. The compound was compared to four commercial vital tracers, including Lucifer Yellow. The first laccase‐mediated regioselective synthesis of a diphosphorylated 2‐aminophenoxazinone dye was also described. This compound, water‐soluble at 10−2 M, displayed modest fluorescence properties and the ability to complex Mg2+ and Ca2+ cations, therefore giving fluorescence quenching.


Organic and Biomolecular Chemistry | 2012

Non-symmetrically substituted phenoxazinones from laccase-mediated oxidative cross-coupling of aminophenols: an experimental and theoretical insight.

Frédéric Bruyneel; Georges Dive; Jacqueline Marchand-Brynaert

Oxidative cross-coupling reactions of substituted o-aminophenols were catalyzed by a commercial laccase to produce non-symmetrically substituted phenoxazinones for the first time. Identification by (1)H-, (13)C- and (31)P-NMR, and by HPLC-PDA and HPLC-MS/MS of exclusively two kinds of substituted phenoxazinones out of four potential heterocyclic frameworks was confirmed by a DFT study. The redox-properties of the substrates, their relative rates of conversion and the rigid docking of selected substrates led to a revisited mechanistic pathway for phenoxazinones biosynthesis. Our suggestions concern both the first formal two-electron oxidation by laccase and the first intermolecular 1,4-conjugated addition which secures the observed regioselectivity.


European Journal of Organic Chemistry | 2008

Regioselective synthesis of 3-hydroxyorthanilic acid and its biotransformation into a novel phenoxazinone dye by use of laccase

Frédéric Bruyneel; Estelle Enaud; Ludovic Billottet; Sophie Vanhulle; Jacqueline Marchand-Brynaert


Chemistry: A European Journal | 2009

Laccase-Mediated Synthesis of Novel Substituted Phenoxazine Chromophores Featuring Tuneable Water Solubility.

Frédéric Bruyneel; Olivier Payen; Antonio Rescigno; Bernard Tinant; Jacqueline Marchand-Brynaert


Dyes and Pigments | 2010

A novel azoanthraquinone dye made through innovative enzymatic process

Estelle Enaud; Marie Trovaslet; Frédéric Bruyneel; Ludovic Billottet; Rezzan Karaaslan; Mehmet Emre Sener; Paul Coppens; Ana Casas; Ismene J. Jaeger; Christof Hafner; Rob C. A. Onderwater; Anne-Marie Corbisier; Jacqueline Marchand-Brynaert; Sophie Vanhulle


Synthesis | 2003

N-(alkyl)-2-amino-1,4-pyrazine derivatives: Synthesis and antioxidative properties of 3-and 3,5-p-hydroxyphenyl-substituted compounds

Paul Jeanjot; Frédéric Bruyneel; Axelle Arrault; Sonia Gharbi; Jean-François Cavalier; Agnes Abels; Cécile Marchand; Roland Touillaux; Jean-François Rees; Jacqueline Marchand-Brynaert


COST Young Researchers Meeting - Perspect H2O - Current Challenges in Supramolecular Artificial Photosynthesis | 2014

Non-labile water-soluble phenoxazinone metal complexes (poster)

Michaël Abraham; Frédéric Bruyneel; Jacqueline Marchand-Brynaert; Benjamin Elias


Synlett | 2013

Phosphonated benzoxazole derivatives: synthesis and metal complexing properties

Elodie Lagadic; Frédéric Bruyneel; Noémie Demeyer; Marie-France Herent; Yann Garcia; Jacqueline Marchand-Brynaert

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Pierre J. Courtoy

Université catholique de Louvain

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Elodie Lagadic

Université catholique de Louvain

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Ludovic D'Auria

Université catholique de Louvain

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Olivier Payen

Université catholique de Louvain

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Yann Garcia

Université catholique de Louvain

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Donatienne Tyteca

Université catholique de Louvain

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Estelle Enaud

Université catholique de Louvain

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Ludovic Billottet

Université catholique de Louvain

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Patrick Van Der Smissen

Université catholique de Louvain

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